Projecten per jaar
Samenvatting
BACKGROUND: Germ cell depletion caused by chemical or physical toxicity, disease or genetic predisposition can occur at any age. Although semen cryopreservation is the first reflex for preserving male fertility, this cannot help out prepubertal boys. Yet, these boys do have spermatogonial stem cells (SSCs) that able to produce sperm at the start of puberty, which allows them to safeguard their fertility through testicular tissue (TT) cryopreservation. SSC transplantation (SSCT), TT grafting and recent advances in in vitro spermatogenesis have opened new possibilities to restore fertility in humans. However, these techniques are still at a research stage and their efficiency depends on the amount of SSCs available for fertility restoration. Therefore, maintaining the number of SSCs is a critical step in human fer- tility preservation. Standardizing a successful cryopreservation method for TT and testicular cell suspensions (TCSs) is most important before any clinical application of fertility restoration could be successful.
OBJECTIVE AND RATIONALE: This review gives an overview of existing cryopreservation protocols used in different animal models and humans. Cell recovery, cell viability, tissue integrity and functional assays are taken into account. Additionally, biosafety and current perspectives in male fertility preservation are discussed.
SEARCH METHODS: An extensive PubMED and MEDline database search was conducted. Relevant studies linked to the topic were identified by the search terms: cryopreservation, male fertility preservation, (immature)testicular tissue, testicular cell suspension, sperm- atogonial stem cell, gonadotoxicity, radiotherapy and chemotherapy.
OUTCOMES: The feasibility of fertility restoration techniques using frozen-thawed TT and TCS has been proven in animal models. Efficient protocols for cryopreserving human TT exist and are currently applied in the clinic. For TCSs, the highest post-thaw viability reported after vitrification is 55.6 ± 23.8%. Yet, functional proof of fertility restoration in the human is lacking. In addition, few to no data
OBJECTIVE AND RATIONALE: This review gives an overview of existing cryopreservation protocols used in different animal models and humans. Cell recovery, cell viability, tissue integrity and functional assays are taken into account. Additionally, biosafety and current perspectives in male fertility preservation are discussed.
SEARCH METHODS: An extensive PubMED and MEDline database search was conducted. Relevant studies linked to the topic were identified by the search terms: cryopreservation, male fertility preservation, (immature)testicular tissue, testicular cell suspension, sperm- atogonial stem cell, gonadotoxicity, radiotherapy and chemotherapy.
OUTCOMES: The feasibility of fertility restoration techniques using frozen-thawed TT and TCS has been proven in animal models. Efficient protocols for cryopreserving human TT exist and are currently applied in the clinic. For TCSs, the highest post-thaw viability reported after vitrification is 55.6 ± 23.8%. Yet, functional proof of fertility restoration in the human is lacking. In addition, few to no data
Originele taal-2 | English |
---|---|
Pagina's (van-tot) | 744-761 |
Aantal pagina's | 17 |
Tijdschrift | Human Reproduction Update |
Volume | 26 |
Nummer van het tijdschrift | 6 |
DOI's | |
Status | Published - 19 jul. 2016 |
Vingerafdruk
Duik in de onderzoeksthema's van 'Cryopreservation of testicular tissue or testicular cell suspension: a pivotal step in fertility preservation'. Samen vormen ze een unieke vingerafdruk.Projecten
- 1 Afgelopen
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ANI77: Fertiliteitspreservatie bij mannelijke kinderkankerpatiënten
Goossens, E., Tournaye, H., Baert, Y. & Van Haelst, F.
1/07/11 → 30/06/14
Project: Fundamenteel
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Cryopreservation of testicular tissue before long-term testicular cell culture does not alter in vitro cell dynamics
Baert, Y., Braye, A., Struijk, R. B., van Pelt, A. M. M. & Goossens, E., 2015, In: Fertility and Sterility. 104, blz. 1244-1252 9 blz.Onderzoeksoutput: Article › peer review
51 Citaten (Scopus) -
Orthotopic grafting of cryopreserved prepubertal testicular tissue: in search of a simple yet effective cryopreservation protocol
Goossens, E., 5 jan. 2013, Fertility 2013.Onderzoeksoutput: Meeting abstract (Book)
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What is the best cryopreservation protocol for human testicular tissue banking?
Baert, Y., Van Saen, D., Haentjens, P., In 'T Veld, P., Tournaye, H. & Goossens, E., 2013, In: Human Reproduction. 28, blz. 1816-1826 11 blz.Onderzoeksoutput: Article › peer review
Activiteiten
- 1 Participation in workshop, seminar
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5th meeting of the Growsperm ITN network
Ellen Goossens (Organiser)
29 mrt. 2017 → 30 mrt. 2017Activiteit: Participation in workshop, seminar